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    Multi Objective Optimization of Distributed Energy Systems Considering Renewables and Fossil Fuel Resources

    , M.Sc. Thesis Sharif University of Technology Maroufmashat, Azadeh (Author) ; Sattari Khavas, Sourena (Supervisor) ; Roshandel, Ramin (Supervisor)
    Abstract
    Urban energy systems are responsible for the majority of the energy consumption around the world and they play an important role in energy issues such as economic security and climate change. Furthermore, there are growing concerns about the depletion of fossil fuel resources and the negative effect they have had on the ecosystem. To this end, a holistic and integrated approach is necessary for the optimal design and operation of urban energy systems that makes expressive betterment in energy efficiency and environmental impact. The aim of this research is to develop an optimum methodology for communities in the context of energy hub. The energy hub is a novel concept to systematically... 

    Energy and Economic Analysis of Micro CHP Systems in Buildings

    , M.Sc. Thesis Sharif University of Technology Arami, Mitra (Author) ; Sattari, Sourena (Supervisor)
    Abstract
    In recent decades, due to economic, political and environmental issues, tend to use of the CHP systems (combined heating and power) have increased. CHP systems not only increase energy efficiency, but also decrease fuel consumption and emission levels of systems. The use of CHP technology in the industry has a long history, but the use of these systems in the commercial and residential sector, is considered, recently. As to the residential buildings, both electricity and thermal energy demands fluctuate seasonally and hourly, so it is necessary to take account of the plant’s annual operational strategies for the variations of load demands. In this paper, a nonlinear programming model is... 

    Characterizing the Optimum Energy Flow Model in a Building Using Internal Energy

    , M.Sc. Thesis Sharif University of Technology Zilooei, Abolfazl (Author) ; Sattari, Sourena (Supervisor)
    Abstract
    This study is a modeling for “building’s energy consumption” as well as selecting an optimum composition of technologies to meet a building’s needs, with an approach of reducing energy and facility costs . In modeling the energy stream to evaluate heating comfort and to calculate building’s heating load, the interaction between these two phenomena is assumed to be en block. The unique and en block study requires surveying mass and energy streams from all particles of a building, which are not traceable in simple static methods. This study assumes a building with following requests: heating load, cooling load,air conditioning and heat water. An optimum selection of facilities and... 

    Energy Conservation in The Gas Turbines of National Iranian Oil Company Considering Local Operational Conditions

    , M.Sc. Thesis Sharif University of Technology Firouzmand, Vahid (Author) ; Sattari, Sourena (Supervisor)
    Abstract
    Low effiencies of equipments and lack of forecasting heat integration in some oil regions are the reasons of primary energy losses in these regions. Also there have been difficulties in providing electric power demands in regions separate from the state electricity network which is a barrier in front of exploiting all the potentials of the region. This research introduces a model that can lead to selection of optimal configuration of equipments and units in order to establish a CCHP system that answers variable electric, heating and cooling demands ensuring a safe margin of power generation. The model simultaneously has the ability to select between existing and new installable equipments.... 

    Proposal of an Optimized ZLD System for Mine Effluent and Investigation of Valuable Material Extraction

    , M.Sc. Thesis Sharif University of Technology Dehghani, Amin (Author) ; Sattari, Sourena (Supervisor)
    Abstract
    The aim of this study is to design a Zero Liquid Discharge (ZLD) treatment plant for mine effluent. For this purpose, wastewater from an iron ore mine was selected as a case study. Initially, recent studies on ZLD systems were reviewed, and a technically feasible process was designed to treat mine effluent with a ZLD approach. The designed process was then simulated using Aspen Plus software, and the results were utilized for an economic analysis. The simulation was performed under three design scenarios: (1) using external steam for energy supply, (2) utilizing waste heat, and (3) employing a steam compressor to superheat the saturated steam exiting the evaporative crystallizer and using... 

    Flare Gas Recovery and Transforming Them into Petrochemicals

    , M.Sc. Thesis Sharif University of Technology Khodabandeh Jahromi, Maryam (Author) ; Sattari, Sourena (Supervisor)
    Abstract
    By combustion, waste toxic, flammable and corrosive materials are changed to less inviromental problems by combustion. It also creats environmental problems (the most serios problem is caused by burning gases), as well as economic resources are wasted. So several ways was investigated to reduce combustion gases. Mini-methanol plant is one of varios possible ways that can convert these gases in to methanol. So methanol plant was simulated and then pinch analysis was performed on the simulated plant. Performing of pinch analysis caused 94.5 percent and 25 percent reduction in amaunt of hot and cold utility respectively. Before and after pinch analysis, the exergy analysis was performed on... 

    Technical and Economical Feasibility Study of Using Flare Gas for Converting to Other Products in Iran

    , M.Sc. Thesis Sharif University of Technology Marouf Mashat, Azadeh (Author) ; Sattari, Sourena (Supervisor)
    Abstract
    The Increasing trend of gas flaring over oil fields and gas process systems in Iran not only causes several environmental problems, but makes the economical resources useless as well. Considering the high amount of flaring and old facilities, one of the best solutions is the recovery of the flare gas in Iran. It seems that collecting the flare gas is not possible in different sectors. Therefore, using a plant for converting flare gas to other products must be logical. In this project, the feasibility study of converting flare gas to other products is studied. For this reason, a methanol plant is simulated; whose input feed is the content of flare gas of the South of Iran (Marun and Siri).... 

    Flare Gas Reduction in Oil Refineries

    , M.Sc. Thesis Sharif University of Technology Haji Hasan Tehrani, Elham (Author) ; Sattari, Sourena (Supervisor)
    Abstract
    Off-gas flows in refineries normally consist of hydrogen, methane and heavy hydrocarbons which are burnt in flare. While the demand for hydrogen in refineries is increased and the required hydrogen is provided by steam reforming or partial oxidation of methane or other hydrocarbons, recovering the hydrogen from off-gasses can reduce the refineries losses and optimize it economically. The four main processes for hydrogen recovery unit are the Pressure Swing Adsorption process, Membrane process, Cryogenic process, and absorption process. In the present project besides, considering the process flexibility, reliability, and refinery off-gas properties such as pressure, temperature and mole... 

    Developing A Model for Evaluation of Energy Recovery From Flared Gas

    , M.Sc. Thesis Sharif University of Technology Vahabpour, Amir (Author) ; Saboohi, Yadollah (Supervisor) ; Sattari, Sourena (Co-Advisor)
    Abstract
    According to the World Bank, nearly 154 billion cubic meters of gas is flared in the world every year. Iran is known as the third gas flaring country by burning about 11.4 bcm (approximately 8% of the total amount). Flared gas is a rich gas and has a high heating value. Therefore flaring it equals to waste of a valuable source of energy. In addition, serious concerns about its environmental effects due to emission of considerable amounts of CO2, SOx, NOx and other pollutants, makes it necessary to find a solution to reduce gas flaring. There are several ways for flared gas utilization including electricity generation, injecting into oil wells for enhanced oil recovery, gas processing and... 

    Optimal design and operation of a photovoltaic–electrolyser system using particle swarm optimisation

    , Article International Journal of Sustainable Energy ; Volume 35, Issue 6 , 2016 , Pages 566-582 ; 14786451 (ISSN) Sayedin, F ; Maroufmashat, A ; Roshandel, R ; Sattari Khavas, S ; Sharif University of Technology
    Taylor and Francis Ltd  2016
    Abstract
    In this study, hydrogen generation is maximised by optimising the size and the operating conditions of an electrolyser (EL) directly connected to a photovoltaic (PV) module at different irradiance. Due to the variations of maximum power points of the PV module during a year and the complexity of the system, a nonlinear approach is considered. A mathematical model has been developed to determine the performance of the PV/EL system. The optimisation methodology presented here is based on the particle swarm optimisation algorithm. By this method, for the given number of PV modules, the optimal sizeand operating condition of a PV/EL system areachieved. The approach can be applied for different... 

    The impact of climate condition on the optimal size of direct coupled photovoltaic-electrolyzer systems

    , Article Simulation Series, 26 July 2015 through 29 July 2015 ; Volume 47, Issue 10 , July , 2015 , Pages 224-229 ; 07359276 (ISSN) Sayedin, F ; Maroufmashat, A ; Sattari khavas S ; Elkamel, A ; Aladwani, S ; Sharif University of Technology
    The Society for Modeling and Simulation International  2015
    Abstract
    Solar energy exists extensively in all parts of the world. However the intermittency of solar energy presents critical challenges to PV system. The intermittency can be covered by storing solar energy in chemical bonds such as hydrogen. This process can be performed by photovoltaic powered electrolysis of water. The energy transfer efficiency between PV and electrolyzer is subject to the distance between maximum power points (MPP) of PV module and operating points. The operating points can be adjusted by optimizing the design parameters of the electrolyzer but the maximum power points are function of PV module characteristics, solar radiation and ambient temperature. Therefore the weather... 

    Presenting a Machine Learning-Based Approach for Predicting Thermal Runaway Phenomena in Lithium-Ion Battery Packs in Electric Vehicles

    , M.Sc. Thesis Sharif University of Technology Movahedian Attar, Delaram (Author) ; Sattari, Sourena (Supervisor) ; Moeini Aghtaie, Moein (Supervisor)
    Abstract
    Nowadays, lithium-ion batteries are widely used in electric vehicles due to their higher energy density and longer life cycle compared to other storage systems. However, safety concerns about catastrophic risks like fires exist, caused by thermal runaway in lithium-ion batteries. This study aims to provide an accurate electrochemical thermal model for predicting the phenomenon of thermal runaway. In recent years, researchers have conducted many numerical models that generally estimate input parameters. Accurate modeling of thermal runaway is challenging due to the wide range of physical properties and conditions. Therefore, understanding the importance of uncertainty in input parameters,... 

    Development of the energy hub networks based on distributed energy technologies

    , Article Simulation Series, 26 July 2015 through 29 July 2015 ; Volume 47, Issue 10 , 2015 , Pages 216-223 ; 07359276 (ISSN) Maroufmashat, A ; Elkamel, A ; Sattari Khavas, S ; Fowler, M ; Roshandel, R ; Elsholkami, M ; Sharif University of Technology
    The Society for Modeling and Simulation International  2015
    Abstract
    In this paper the creation of multiple energy hubs that make up a complex energy network are modeled and optimized for a selection of six scenarios to examine both their financial viability and potential reduction of greenhouse gas emissions. As a proposed case study scenario for the model, three energy hubs are considered: a 'residential complex (RC)', a 'commercial shopping plaza (CS)', and a 'school (S)'. The use of combined heat and power systems, solar photovoltaic, solar collectors and network interaction are also examined for their impact on efficiency and cost. The modeling is undertaken and carried out by General Algebraic Modeling System (GAMS). It is shown that cost can be reduced... 

    Mixed integer linear programing based approach for optimal planning and operation of a smart urban energy network to support the hydrogen economy

    , Article International Journal of Hydrogen Energy ; Volume 41, Issue 19 , 2016 , Pages 7700-7716 ; 03603199 (ISSN) Maroufmashat, A ; Fowler, M ; Sattari Khavas, S ; Elkamel, A ; Roshandel, R ; Hajimiragha, A ; Sharif University of Technology
    Elsevier Ltd  2016
    Abstract
    The future of urban energy systems relies on the transition to "smart energy networks" which incorporate energy storage with renewable energy sources such as wind and solar. Hydrogen provides a desirable energy vector for both energy storage and exchange of energy between energy hubs within a smart energy network. This paper aims to develop a generic mathematical model for the optimal energy management of future communities where hydrogen is used as an energy vector. An energy hub is a novel concept that systematically and holistically considers the energy requirements of both mobility and stationary loads. In order to perform optimization studies, the minimization of capital cost of... 

    An imperialist competitive algorithm approach for multi-objective optimization of direct coupling photovoltaic-electrolyzer systems

    , Article International Journal of Hydrogen Energy ; Vol. 39, Issue 33 , 11 November , 2014 , pp. 18743-18757 ; ISSN: 03603199 Maroufmashat, A ; Sayedin, F ; Khavas, S. S
    2014
    Abstract
    In the context of sustainable clean hydrogen production pathways, photovoltaic-electrolyzer systems are one of the most promising alternatives for acquiring hydrogen from renewable energy sources. In fact, determining the optimal set of design and operating variables are always a key issue while coupling directly renewable electricity sources to PEM electrolyzers. Few previous studies have attempted to find the optimal size and operational condition of directly coupled photovoltaic-electrolyzer (PV/El) systems in order to maximize the hydrogen production or to minimize energy transfer loss between photovoltaic devices and the electrolyzer. Nevertheless an easy and efficient approach still... 

    Optimal design and operation of a photovoltaic-electrolyser system using particle swarm optimisation

    , Article International Journal of Sustainable Energy ; 2014 ; ISSN: 14786451 Sayedin, F ; Maroufmashat, A ; Roshandel, R ; Khavas, S. S
    2014
    Abstract
    In this study, hydrogen generation is maximised by optimising the size and the operating conditions of an electrolyser (EL) directly connected to a photovoltaic (PV) module at different irradiance. Due to the variations of maximum power points of the PV module during a year and the complexity of the system, a nonlinear approach is considered. A mathematical model has been developed to determine the performance of the PV/EL system. The optimisation methodology presented here is based on the particle swarm optimisation algorithm. By this method, for the given number of PV modules, the optimal sizeand operating condition of a PV/EL system areachieved. The approach can be applied for different... 

    Preparation of Cu-MoSi2 Nanocomposite by Mechanical Alloying and Investigation of Properties

    , M.Sc. Thesis Sharif University of Technology Khavas, Elham (Author) ; Pourazarang, Kazem (Supervisor) ; Abachi, Parvin (Supervisor)
    Abstract
    In this study, to synthesize molybdenum disilicide nano powder, mixed powder of Mo and Si were ball milled for 15, 30, 45 and 55 hours. By the results of the analyses, milled powders for time intervals of 55 hours were heat treated to release the stresses. This process was carried out in an argon vacuum tube furnace at 1000˚C for 1 hour. XRD analysis was carried for sample. Finally, MoSi2 powder with 86.62 nm crystallite size was used as reinforcement. Cu-MoSi2 composite powder with 2, 3, 5wt% were produced. Cu-MoSi2 with 2wt% reinforcement was milled for 60 hours. Powder composite was compacted by Spark Plasma Sintering . Microstructure of composite was investigated by scanning electron... 

    An exact algorithm for the minimum dilation triangulation problem

    , Article Journal of Global Optimization ; Volume 69, Issue 2 , 2017 , Pages 343-367 ; 09255001 (ISSN) Sattari, S ; Izadi, M ; Sharif University of Technology
    2017
    Abstract
    Given a triangulation of a point set on the plane, dilation of any pair of the points is the ratio of their shortest path length to their Euclidean distance. The maximum dilation over all pairs of points is called the dilation of this triangulation. Minimum dilation triangulation problem seeks a triangulation with the least possible dilation of an input point set. For this problem no polynomial time algorithm is known. We present an exact algorithm based on a branch and bound method for finding minimum dilation triangulations. This deterministic algorithm after generating an initial solution, iteratively computes a lower bound for the answer and then applies a branch and bound method to find... 

    Upper bounds for minimum dilation triangulation in two special cases

    , Article Information Processing Letters ; Volume 133 , 2018 , Pages 33-38 ; 00200190 (ISSN) Sattari, S ; Izadi, M ; Sharif University of Technology
    Elsevier B.V  2018
    Abstract
    Give a triangulation of a set of points on the plane, dilation of any two points is defined as the ratio between the length of the shortest path of these points and their Euclidean distance. Minimum dilation triangulation is a triangulation in which the maximum dilation between any pair of the points is minimized. We give upper bounds on the dilation of the minimum dilation triangulation for two kinds of point sets: An upper bound of nsin⁡(π/n)/2 for a centrally symmetric convex point set containing n points, and an upper bound of 1.19098 for a set of points on the boundary of a semicircle. © 2018 Elsevier B.V  

    Ultra-low power frequency-shift keying demodulator based on injection-locking ring oscillator without using phase locked loop for wireless body area networks

    , Article Electronics Letters ; Volume 53, Issue 16 , 2017 , Pages 1148-1150 ; 00135194 (ISSN) Sattari, R ; Safarian, A ; Sharif University of Technology
    2017
    Abstract
    An ultra-low power frequency-shift keying (FSK) demodulator based on injection-locking ring oscillator for wireless body area networks is presented. The proposed system uses the power-efficient injectionlocking ring oscillator (ILRO) to replace the LC oscillator which occupies much more area on chip with higher power consumption. In addition, through the ILRO, the frequency modulated input signal is converted to a full swing rectangular signal, which can be directly demodulated by a chain of down-conversion passive mixers, lowpass filters and a comparator. Power efficiency and simplicity of the proposed structure eliminate conventional FSK demodulator based on power-hungry phase locked...